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Fossil hominin shoulders support an African ape-like last common ancestor of humans and chimpanzees

机译:化石人猿的肩膀支撑着非洲猿猴般的人类和黑猩猩的最后祖先

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摘要

Reconstructing the behavioral shifts that drove hominin evolution requires knowledge of the timing, magnitude, and direction of anatomical changes over the past ∼6–7 million years. These reconstructions depend on assumptions regarding the morphotype of the Homo–Pan last common ancestor (LCA). However, there is little consensus for the LCA, with proposed models ranging from African ape to orangutan or generalized Miocene ape-like. The ancestral state of the shoulder is of particular interest because it is functionally associated with important behavioral shifts in hominins, such as reduced arboreality, high-speed throwing, and tool use. However, previous morphometric analyses of both living and fossil taxa have yielded contradictory results. Here, we generated a 3D morphospace of ape and human scapular shape to plot evolutionary trajectories, predict ancestral morphologies, and directly test alternative evolutionary hypotheses using the hominin fossil evidence. We show that the most parsimonious model for the evolution of hominin shoulder shape starts with an African ape-like ancestral state. We propose that the shoulder evolved gradually along a single morphocline, achieving modern human-like configuration and function within the genus Homo. These data are consistent with a slow, progressive loss of arboreality and increased tool use throughout human evolution.
机译:重建促使人乳素进化的行为转变,需要了解过去约6–700万年的解剖变化的时机,幅度和方向。这些重建取决于关于同源潘最后祖先(LCA)的形态类型的假设。然而,关于LCA的共识很少,所提出的模型范围从非洲猿到猩猩或广义的中新世类猿。肩膀的祖先状态特别受关注,因为它在功能上与人参的重要行为转变相关,例如减少树木生长,高速投掷和使用工具。但是,先前对活体和化石类群的形态计量学分析得出了矛盾的结果。在这里,我们生成了猿和人类肩骨形状的3D形态空间,以绘制进化轨迹,预测祖先形态,并使用人化石化石证据直接测试替代进化假设。我们表明,最简单的人类素肩膀形状进化模型始于非洲类猿人的祖先状态。我们建议肩膀沿单一吗啉逐渐演化,从而在现代人体内实现类似人的构型和功能。这些数据与整个人类进化过程中缓慢渐进的树木消失和增加工具使用相一致。

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